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In Lesson 1, we will investigate the variety of behaviors, properties and characteristics of light that seem to support the wave model of light. On this page, we will focus on three specific behaviors - reflection, refraction and diffraction. A wave doesn't just stop when it reaches the end of the medium. Rather, a wave will undergo certain ...
First, we will examine the wavelike properties of light. Visible light is one type of electromagnetic radiation , which is a form of energy that exhibits wavelike behavior as it moves through space. Other types of electromagnetic radiation include gamma rays, x-rays, ultraviolet light, infrared light, microwaves, and radio waves.
Dec 7, 2022 · Light has the properties of waves. Like ocean waves, light waves have crests and troughs. The distance between one crest and the next, which is the same as the distance between one trough and the next, is called the wavelength. The frequency of a wave is the number of crests (or troughs) that pass a point in one second.
To introduce the wave-particle duality of light extends to matter To describe how matter (e.g., electrons and protons) can exhibit wavelike properties, e.g., interference and diffraction patterns To use algebra to find the de Broglie wavelength or momentum of a particle when either one of these quantities is given
Oct 17, 2015 · The main quantifiable properties of EM radiation, or light, are the wavelength, intensity and photon energy. The wavelength is used to determine the type of wave involved. Whereas the intensity of light is related to the amount of photons present, which essentially “concentrates” energy. Therefore, greater amounts of photons in light ...
May 24, 2024 · Mathematics and experiments show that light is a transverse wave – the electric and magnetic field vectors point in directions that are perpendicular to the direction of motion of the light wave (and as it turns out, they also rare always perpendicular to each other). Figure 2.1.1 – Electromagnetic Wave. The red arrows in the figure above ...
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Apr 10, 2022 · Example 5.1. 1 5.1. 1: Deriving and Using the Wave Equation. The equation for the relationship between the speed and other characteristics of a wave can be derived from our basic understanding of motion. The average speed of anything that is moving is: average speed = distance × time average speed = distance × time.